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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Development of a Numerical Method for Patient-Specific Cerebral Circulation Using 1D-0D Simulation of the Entire Cardiovascular System with SPECT Data
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Development of a Numerical Method for Patient-Specific Cerebral Circulation Using 1D-0D Simulation of the Entire Cardiovascular System with SPECT Data

机译:利用SPECT数据对整个心血管系统进行1D-0D模拟,开发一种针对特定患者的脑循环数值方法

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The detailed flow information in the circle of Willis (CoW) can facilitate a better understanding of disease progression, and provide useful references for disease treatment. We have been developing a one-dimensional-zero-dimensional (1D-0D) simulation method for the entire cardiovascular system to obtain hemodynamics information in the CoW. This paper presents a new method for applying 1D-0D simulation to an individual patient using patient-specific data. The key issue is how to adjust the deviation of physiological parameters, such as peripheral resistance, from literature data when patient-specific geometry is used. In order to overcome this problem, we utilized flow information from single photon emission computed tomography (SPECT) data. A numerical method was developed to optimize physiological parameters by adjusting peripheral cerebral resistance to minimize the difference between the resulting flow rate and the SPECT data in the efferent arteries of the CoW. The method was applied to three cases using different sets of patient-specific data in order to investigate the hemodynamics of the CoW. The resulting flow rates in the afferent arteries were compared to those of the phase-contrast magnetic resonance angiography (PC-MRA) data. Utilization of the SPECT data combined with the PC-MRA data showed a good agreement in flow rates in the afferent arteries of the CoW with those of PC-MRA data for all three cases. The results also demonstrated that application of SPECT data alone could provide the information on the ratios of flow distributions among arteries in the CoW.
机译:Willis(CoW)圈中的详细流量信息可以促进对疾病进展的更好理解,并为疾病治疗提供有用的参考。我们一直在开发整个心血管系统的一维零维(1D-0D)模拟方法,以获取CoW中的血液动力学信息。本文介绍了一种使用患者特定数据将1D-0D模拟应用于单个患者的新方法。关键问题是当使用患者特定的几何形状时,如何从文献数据中调整生理参数(例如外周阻力)的偏差。为了克服此问题,我们利用了来自单光子发射计算机断层扫描(SPECT)数据的流信息。开发了一种数值方法来优化生理参数,方法是调节外周脑阻力,以最大程度地减少CoW出射动脉的流速与SPECT数据之间的差异。为了研究CoW的血流动力学,该方法被用于使用不同患者特定数据集的三例病例。将传入动脉中的流速与相衬磁共振血管造影(PC-MRA)数据的流速进行比较。将SPECT数据与PC-MRA数据结合使用表明,在所有三种情况下,CoW传入动脉的流速均与PC-MRA数据的流速良好吻合。结果还表明,仅应用SPECT数据就可以提供有关CoW中各动脉之间血流分布比率的信息。

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